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镍纳米颗粒:对耐甲氧西林感染的应用及抗菌作用

Nickel Nanoparticles: Applications and Antimicrobial Role against Methicillin-Resistant Infections.

作者信息

Zarenezhad Elham, Abdulabbas Hussein T, Marzi Mahrokh, Ghazy Esraa, Ekrahi Mohammad, Pezeshki Babak, Ghasemian Abdolmajid, Moawad Amira A

机构信息

Noncommunicable Diseases Research Center, Fasa University of Medical Sciences, Fasa 7461686688, Iran.

Department of Medical Laboratory Techniques, Faculty of Health and Medical Techniques, Imam Ja'afar Al-Sadiq University, Al Muthanna 9647555434, Iraq.

出版信息

Antibiotics (Basel). 2022 Sep 7;11(9):1208. doi: 10.3390/antibiotics11091208.

Abstract

Methicillin-resistant (MRSA) has evolved vast antibiotic resistance. These strains contain numerous virulence factors facilitating the development of severe infections. Considering the costs, side effects, and time duration needed for the synthesis of novel drugs, seeking efficient alternative approaches for the eradication of drug-resistant bacterial agents seems to be an unmet requirement. Nickel nanoparticles (NiNPs) have been applied as prognostic and therapeutic cheap agents to various aspects of biomedical sciences. Their antibacterial effects are exerted via the disruption of the cell membrane, the deformation of proteins, and the inhibition of DNA replication. NiNPs proper traits include high-level chemical stability and binding affinity, ferromagnetic properties, ecofriendliness, and cost-effectiveness. They have outlined pleomorphic and cubic structures. The combined application of NiNPs with CuO, ZnO, and CdO has enhanced their anti-MRSA effects. The NiNPs at an approximate size of around 50 nm have exerted efficient anti-MRSA effects, particularly at higher concentrations. NiNPs have conferred higher antibacterial effects against MRSA than other nosocomial bacterial pathogens. The application of green synthesis and low-cost materials such as albumin and chitosan enhance the efficacy of NPs for therapeutic purposes.

摘要

耐甲氧西林金黄色葡萄球菌(MRSA)已经产生了广泛的抗生素耐药性。这些菌株含有许多毒力因子,易引发严重感染。考虑到合成新药所需的成本、副作用和时间,寻找根除耐药细菌病原体的有效替代方法似乎是一项尚未满足的需求。镍纳米颗粒(NiNPs)已作为廉价的预后和治疗剂应用于生物医学科学的各个方面。它们的抗菌作用是通过破坏细胞膜、使蛋白质变形以及抑制DNA复制来实现的。NiNPs的特性包括高水平的化学稳定性和结合亲和力、铁磁特性、生态友好性和成本效益。它们呈现出多晶型和立方结构。NiNPs与CuO、ZnO和CdO的联合应用增强了它们对MRSA的抗菌效果。尺寸约为50nm的NiNPs发挥了有效的抗MRSA作用,尤其是在较高浓度时。与其他医院细菌病原体相比,NiNPs对MRSA具有更高的抗菌效果。绿色合成以及使用白蛋白和壳聚糖等低成本材料的应用提高了纳米颗粒的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3157/9495148/de33f0b5b98e/antibiotics-11-01208-g001.jpg

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